In some aphid species, intraspecific variation in body colour is caused by differential carotenoid content: whilst green aphids contain only yellow carotenoids (β-, γ-, and β,γ-carotenes), red aphids additionally possess red carotenoids (torulene and 3,4-didehydrolycopene). Unusually, within animals who typically obtain carotenoids from their diet, ancestral horizontal gene transfer of carotenoid biosynthetic genes from fungi (followed by gene duplication), have imbued aphids with the intrinsic gene repertoire necessary to biosynthesise carotenoids. In the pea aphid, Acyrthosiphon pisum a lycopene (phytoene) desaturase gene (Tor) underpins the red/green phenotype, with this locus present in heterozygous form in red individuals but absent in...
Imidacloprid-induced hormesis in the form of stimulated reproduction has previously been reported in...
Ecology of insects is as wide as their diversity, which reflects their high capacity of adaptation i...
dissertationCarotenoids are vibrant red, yellow, and orange pigments that are responsible for many c...
Carotenoids are colored compounds produced by plants, fungi, and microorganisms and are required in ...
BACKGROUND: Aphids obtained carotenoid biosynthesis genes via horizontal gene transfers from fungi. ...
Carotenoids are involved in many essential physiological functions and are produced from geranylgera...
Data published in the scientific literature suggests a possible link between chromosomal rearrangeme...
Carotenoids underlie many of the vibrant yellow, orange, and red colors in animals, and are involved...
Gene transfer among reproductively isolated organisms can lead to novel phenotypes and increased fit...
A singular adaptive phenotype of a parthenogenetic insect species (Acyrthosiphon pisum) was selected...
The economically important grain aphid, Sitobion avenae (F.) shows colour polymorphism with brown an...
Keto-carotenoids contribute to many important traits in animals, including vision and coloration. In...
The pea aphid, Acyrthosiphon pisum (Harris), shows body color shifting from red to pale under starva...
Previous complementation and mapping of mutations that change the usual yellow color of the Zygomyce...
Host-associated races of phytophagous insects provide a model for understanding how adaptation to a ...
Imidacloprid-induced hormesis in the form of stimulated reproduction has previously been reported in...
Ecology of insects is as wide as their diversity, which reflects their high capacity of adaptation i...
dissertationCarotenoids are vibrant red, yellow, and orange pigments that are responsible for many c...
Carotenoids are colored compounds produced by plants, fungi, and microorganisms and are required in ...
BACKGROUND: Aphids obtained carotenoid biosynthesis genes via horizontal gene transfers from fungi. ...
Carotenoids are involved in many essential physiological functions and are produced from geranylgera...
Data published in the scientific literature suggests a possible link between chromosomal rearrangeme...
Carotenoids underlie many of the vibrant yellow, orange, and red colors in animals, and are involved...
Gene transfer among reproductively isolated organisms can lead to novel phenotypes and increased fit...
A singular adaptive phenotype of a parthenogenetic insect species (Acyrthosiphon pisum) was selected...
The economically important grain aphid, Sitobion avenae (F.) shows colour polymorphism with brown an...
Keto-carotenoids contribute to many important traits in animals, including vision and coloration. In...
The pea aphid, Acyrthosiphon pisum (Harris), shows body color shifting from red to pale under starva...
Previous complementation and mapping of mutations that change the usual yellow color of the Zygomyce...
Host-associated races of phytophagous insects provide a model for understanding how adaptation to a ...
Imidacloprid-induced hormesis in the form of stimulated reproduction has previously been reported in...
Ecology of insects is as wide as their diversity, which reflects their high capacity of adaptation i...
dissertationCarotenoids are vibrant red, yellow, and orange pigments that are responsible for many c...